Thorogood American Heritage 8” Steel Toe Work Boots for Men - Full-Grain Leather with Moc Toe, Slip-Resistant Wedge Outsole, and Comfort Insole; EH Rated
AMERICAN MADE men’s work boots made in the USA with USA and globally sourced components
DURABLE & COMFORTABLE full-grain leather boots with removable dual-density Ultimate Shock Absorption footbeds, Poron cushion insoles, and durable rubber midsoles. These moc toe boots for men have roomy toe boxes with plenty of space
STEEL TOE boots for men provide ASTM F2413-18 certified protection from impact and compression hazards on the job
SLIP-RESISTANT MAXWear Wedge work boots protect from on-the-job slips and falls. Outsole is resistant to oil and abrasion. Goodyear storm welt construction ensures a durable and resoleable work boot
EH RESISTANT men’s boots meet ASTM F2413-18 electrical hazard resistance safety standards and are the go-to choice for a carpenter, construction worker, mechanic, electrician, maintenance or HVAC technician, heavy equipment operator, ironworker, pipefitter, welder, or anyone else who needs comfortable safety toe protection while doing tough jobs
Product Specifications
Product Information
Product description
SAFETY TOE BOOTS
All boots featuring a safety toe either steel or composite meet or exceed the falling IMPACT and COMPRESSION testing.
[I] IMPACT: Footwear retains a .500 inch (1/2 inch) for men’s and .468 inch (15/32 inch) for women’s or greater clearance after a nominal impact of 75 foot-pounds (101.7J), i.e., a 50 pound weight dropped, reaching 117.9 ± 2.4 inches per second velocity at impact.
[C] COMPRESSION: Footwear retains a .500 inch (1/2 inch) for men’s and .468 inch (15/32 inch) for women’s or greater clearance after a compression force of 2500 lbs. (11,121 N).
SLIP-RESISTING
Footwear is tested for ASTM F3445-21 industry criteria for slip-resisting footwear.
OIL-RESISTING
The outsole is designed to withstand or reduce damage due to oil.
ELECTRIC HAZARD
Constructed or manufactured with electric shock-resisting soles and heels capable of withstanding an application of 18,000 volts (root mean square (RMS) value) at 60 Hz for 1 minute, with no current flow or current leakage in excess of 1.0 milliamperes under dry conditions.